Forensic entomology in homicide cases: study of a corpse found inside a buried vehicle

Pittner S, Bugelli V, Weitgasser K, Zissler A, Sanit S, Lutz L, et al. A field study to evaluate PMI estimation methods for advanced decomposition stages. Int J Leg Med. 2020;134:1361–73. https://doi.org/10.1007/s00414-020-02278-0.

Article  Google Scholar 

Wells JD. LaMotte LR Estimating the postmortem interval. In: Byrd JH, Tomberlin J, editors. Forensic entomology: the utility of arthropods in legal investigations. 3rd ed. CRC Press, Boca Raton: FL; 2010. p. 213–24.

Shrestha R, Kanchan T, Krishan K. Methods of estimation of time Since Death. In: StatPearls [internet]. StatPearls Publishing, Treasure Island (FL). 2022. PMID: 31751057.

Amendt J, Richards CS, Campobasso CP, Zehner R, Hall MJR. Forensic entomology: applications and limitations. Forensic Sci Med Pathol. 2011;7:379–92. https://doi.org/10.1007/s12024-010-9209-2.

Sharma R, Garg RK, Gaur JR. Various methods for the estimation of the post mortem interval from Calliphoridae: A review. Egypt J Forensic Sci. 2015;5:1–12. https://doi.org/10.1016/j.ejfs.2013.04.002.

Article  CAS  Google Scholar 

Lei G, Liu F, Liu P, Zhou Y, Jiao T, Dang YH. A bibliometric analysis of forensic entomology trends and perspectives worldwide over the last two decades (1998–2017). Forensic Sci Int. 2019;295:72–82. https://doi.org/10.1016/j.forsciint.2018.12.002.

Article  PubMed  Google Scholar 

Lutz L, Zehner R, Verhoff MA, Bratzke H, Amendt J. It is all about the insects: a retrospective on 20 years of forensic entomology highlights the importance of insects in legal investigations. Int J Legal Med. 2021;135:2637–51. https://doi.org/10.1007/s00414-021-02628-6.

Article  PubMed  PubMed Central  Google Scholar 

Matuszewski S, Bajerlein D, Konwerski S, Szpila K. An initial study of insect succession and carrion decomposition in various forest habitats of Central Europe. Forensic Sci Int. 2008;180:61–9. https://doi.org/10.1016/j.forsciint.2008.06.015.

Article  PubMed  Google Scholar 

Anderson GS. Insect succession on carrion and its relationship to determining time of death. In: Byrd JH, Tomberlin J, editors. Forensic entomology: the utility of arthropods in legal investigations. 3rd ed. CRC Press, Boca Raton: FL; 2019. p. 143–75.

Google Scholar 

Archer MS. Annual variation in arrival and departure times of carrion insects at carcasses: implications for succession studies in forensic entomology. Aust J Zool. 2004;51:569–76. https://doi.org/10.1071/ZO03053.

Article  Google Scholar 

Villet MH, Richards CS, Midgley JM. Contemporary precision, bias and accuracy of minimum post-mortem intervals estimated using development of carrion-feeding insects. In: Amendt, J, Goff M, Campobasso C, Grassberger M (eds) Current concepts in forensic entomology. Springer, Dordrecht 2010. pp. 109–137. https://doi.org/10.1007/978-1-4020-9684-6_7

Matuszewski S. Post-mortem interval estimation based on insect evidence: current challenges. Insects. 2021;12(4):314. https://doi.org/10.3390/insects12040314.

Article  PubMed  PubMed Central  Google Scholar 

Amendt J, Campobasso CP, Gaudry E, et al. Best practice in forensic entomology-standards and guidelines. Int J Legal Med. 2007;121:90–104. https://doi.org/10.1007/s00414-006-0086-x.

Article  PubMed  Google Scholar 

Amendt J, Anderson G, Campobasso CP, Dadour I, Gaudry E, Mjr, H, et al. Standard practices. In Forensic Entomology: International Dimensions and Frontiers. CRC Press, Taylor & Francis Group. 2015. pp. 381–398.

Charabidze D, Gosselin M, Hedouin V. Use of necrophagous insects as evidence of cadaver relocation: myth or reality? PeerJ. 2017;5: e3506.

Article  PubMed  PubMed Central  Google Scholar 

Hodecek J. Revisiting the concept of entomotoxicology. Forensic Science International: Synergy. 2020;2:282–6. https://doi.org/10.1016/j.fsisyn.2020.09.003.

Article  PubMed  PubMed Central  Google Scholar 

Pereira AJ, Centeno ND, Nuñez-Vázquez C. Effects of population variations and temperature on Chrysomya megacephala (Diptera: Calliphoridae) development: implications for estimating the postmortem interval. Int J Leg Med. 2024;138:165–75. https://doi.org/10.1007/s00414-023-03020-2.

Article  Google Scholar 

Arnett RH, Downie NM, Jaques H.E. How to know the beetles [USA; Canada]. WC Brown Co; 1980

Disney RHL. Scuttle flies: Diptera: Phoridae: genus Megaselia. Royal Entomological Society; 1989.

Trigo AV. Descripción de las larvas II, III y el pupario de Compsomyiops fulvicrura (Diptera: Calliphoridae). Revista de la Sociedad Entomológica Argentina. 2006;65:87–99.

Google Scholar 

Carvalho CJBD, Mello-Patiu CAD. Key to the adults of the most common forensic species of Diptera in South America. Revista Brasileira de Entomologia. 2008;52:390–406.

Article  Google Scholar 

Almeida LM, Mise KM. Diagnosis and key of the main families and species of South American Coleoptera of forensic importance. Revista Brasileira de Entomologia. 2009;53:227–44.

Article  Google Scholar 

Florez E, Wolff M. Descripción y clave de los estadios inmaduros de las principales especies de Calliphoridae (Diptera) de importancia forense en Colombia. Neotrop Entomol. 2009;38:418–29.

Article  PubMed  Google Scholar 

Szpila K. Key for the identification of third instars of european blowflies (Diptera: Calliphoridae) of forensic importance. In: Amendt, J, Goff M, Campobasso C, Grassberger, M (eds). Current Concepts in Forensic Entomology. Springer, Dordrecht. 2009 https://doi.org/10.1007/978-1-4020-9684-6_3; 2009. pp. 43–56

Rochefort S. Taxonomy and phylogeny of Piophilidae (Diptera). McGill University (Canada); 2016.

Grzywacz A, Hall MJ, Pape T, Szpila K. Muscidae (Diptera) of forensic importance-an identification key to third instar larvae of the western Palaearctic region and a catalogue of the muscid carrion community. Int J Leg Med. 2017;131:855–66. https://doi.org/10.1007/s00414-016-1495-0.

Article  Google Scholar 

Gomes AM. EMS in crime scene: Role of medical emergency teams in forensic cases. Academic Press; 2021.

Ribeiro PB, Carvalho C, Costa P, Junior PS. Desenvolvimento de Ophyra aenescens Wiedemann, 1830 (Diptera, Muscidae, Azeliinae), em diferentes temperaturas, em condições de laboratório. Current Agricultural Science and Technology. 2000;6:264–8.

Google Scholar 

Russo A, Cocuzza GE, Vasta MC, Simola M, Virone G. Life fertility tables of Piophila casei L. (Diptera: Piophilidae) reared at five different temperatures. Environmental Entomology. 2006;35:194–200.

Zhang Y, Li L, Liao M, et al. Development of Megaselia scalaris at constant temperatures and its significance in estimating the time of death. Int J Legal Med. 2024;138:97–106. https://doi.org/10.1007/s00414-023-02993-4.

Article  PubMed  Google Scholar 

Zanetti NI, Visciarelli EC, Centeno ND. The effect of temperature and laboratory rearing conditions on the development of Dermestes maculatus (Coleoptera: Dermestidae). J Forensic Sci. 2016;61:375–81.

Article  PubMed  Google Scholar 

Martín-Vega D, Díaz-Aranda LM, Baz A, Cifrián B. Effect of temperature on the survival and development of three forensically relevant Dermestes species (Coleoptera: Dermestidae). J Med Entomol. 2017;54:1140–50. https://doi.org/10.1093/jme/tjx110.

Article  PubMed  Google Scholar 

Hasan MM, Athanassiou CG, Schilling MW, Phillips T. Biology and management of the red-legged ham beetle, Necrobia rufipes DeGeer (Coleoptera: Cleridae). J Stored Prod Res. 2020;88: 101635. https://doi.org/10.1016/j.jspr.2020.101635.

Article  Google Scholar 

Oliva A. Insects of forensic significance in Argentina. Forensic Sci Int. 2001;120:145–54. https://doi.org/10.1016/S0379-0738(01)00423-6.

Article  CAS  PubMed  Google Scholar 

Centeno N, Maldonado M, Oliva A. Seasonal patterns of arthropods occurring on sheltered and unsheltered pig carcasses in Buenos Aires Province (Argentina). Forensic Sci Int. 2002;126:63–70.

Article  CAS  PubMed  Google Scholar 

Battán Horenstein M, Xavier Linhares A, Rosso de Ferradas B, García DD. Decomposition and dipteran succession in pig carrion in central Argentina: ecological aspects and their importance in forensic science. Med Vet Entomol. 2010;24:16–25.

Battán Horenstein M, Rosso B, García MD. Seasonal structure and dynamics of sarcosaprophagous fauna on pig carrion in a rural area of Cordoba (Argentina): Their importance in forensic science. Forensic Sci Int. 2012;217:146–56.

Article  PubMed  Google Scholar 

Defilippo F, Munari M, Grisendi A, Gaudio RM, D’Incau M, Lavazza A, et al. Insect Colonisation and the Decomposition Process in Aerated versus Watertight Burial Systems. Insects. 2023;14:566. https://doi.org/10.3390/insects14060566.

Article  PubMed  PubMed Central  Google Scholar 

Kulshrestha P, Satpathy DK. Use of beetles in forensic entomology. Forensic Sci Int. 2001;120:15–7. https://doi.org/10.1016/S0379-0738(01)00410-8.

Article  CAS  PubMed  Google Scholar 

Amendt J, Goff ML, Campobasso CP Grassberger, M. (Eds.) Current concepts in forensic entomology. London: Springer Netherlands; 2010.

Early M, Goff ML. Arthropod succession on the island of O´ahu, Hawaiian Islands, USA. J Med Entomol. 1986;23:520–31. https://doi.org/10.1093/jmedent/23.5.520.

Article  CAS  PubMed  Google Scholar 

Grassberger M, Frank C. Initial study of arthropod succession on pig carrion in a central European urban habitat. J Med Entomol. 2004;41:511–23. https://doi.org/10.1603/0022-2585-41.3.511.

Article  CAS  PubMed  Google Scholar 

Gill GJ. Decomposition and arthropod succession an above ground pig carrion in rural Manitoba. Technical Report TR-06–2005, Canadian Police Research Centre, Ottawa; 2005.

Kelly JA, Van Der Linde TC, Anderson GS. The Influence of Clothing and Wrapping on Carcass Decomposition and Arthropod Succession: A Winter Study in Central South Africa. Can Soc Forensic Sci. 2008;41:135–47. https://doi.org/10.1080/00085030.2008.10757171.

Article  Google Scholar 

Schnack JA, Mariluis JC, Centeno ND, Muzon J. Composición específica, ecología y sinantropía de Calliphoridae (Insecta: Diptera) en el Gran Buenos Aires. Revista de la Sociedad Entomologica Argentina. 1995;54:161–71.

留言 (0)

沒有登入
gif